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Development of a cylindrical PEM fuel cell

机译:圆柱形PEM燃料电池的开发

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摘要

Proton exchange membrane fuel cells (PEMFCs) have strong potential as power conversion devices of the future, especially for man-portable and mobile applications. However, the manufacturing cost should be significantly reduced for making PEMFCs commercially attractive. An improvement of the power density with respect to the weight of the cell -termed as gravimetric power density in this study - can help in achieving lower manufacturing cost and reducing parasitic power losses, which is particularly important in man-portable applications. Furthermore, the power density of a PEMFC with respect to the overall volume of the cell - termed as volumetric power density in this study - must be improved for man-portable and automotive applications. The bipolar plates made out of graphite contribute significantly to the cost, weight, and volume of the cell. The state-of-the-art PEM fuel cells are of planar design. While several commercial planar prototypes have been demonstrated, cost and water management are still major issues. These problems arise partly as a result of the complicated bipolar plate design in planar PEMFC. Because the planar fuel cell concept has been so well-entrenched, alternate designs have not been seriously pursued. In this paper, we present some experimental studies on a novel cylindrical PEM fuel cell design that addresses the cost, gravimetric and volumetric power density issues. This study while highlighting the advantages of the tubular design also identifies areas of research that will have tremendous utility in further development of this technology.
机译:质子交换膜燃料电池(PEMFC)作为未来的功率转换设备具有强大的潜力,尤其是对于便携式和移动应用而言。但是,为了使PEMFC具有商业吸引力,应该大大降低制造成本。相对于电池重量而言,功率密度的提高(在本研究中称为重量功率密度)可以帮助实现更低的制造成本和减少寄生功率损耗,这在便携式应用中尤其重要。此外,对于便携式和汽车应用,必须提高PEMFC相对于电池总体积的功率密度(在本研究中称为体积功率密度)。由石墨制成的双极板极大地增加了电池的成本,重量和体积。最新的PEM燃料电池为平面设计。尽管已经展示了几种商业平面原型,但是成本和水管理仍然是主要问题。这些问题部分是由于平面PEMFC中复杂的双极板设计而引起的。由于平面燃料电池的概念已经根深蒂固,因此尚未认真研究替代设计。在本文中,我们对新颖的圆柱形PEM燃料电池设计进行了一些实验研究,该设计解决了成本,重量和体积功率密度问题。这项研究在强调管状设计优势的同时,还确定了在该技术的进一步开发中将具有巨大效用的研究领域。

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